Authors
Shawn Lu Wen Tan, Saakshi Chadha, Yansheng Liu, Evelina Gabasova, David Perera, Karim Ahmed, Stephanie Constantinou, Xavier Renaudin, MiYoung Lee, Ruedi Aebersold, Ashok R Venkitaraman
Publication date
2017/6/1
Journal
Cell
Volume
169
Issue
6
Pages
1105-1118. e15
Publisher
Elsevier
Description
Mutations truncating a single copy of the tumor suppressor, BRCA2, cause cancer susceptibility. In cells bearing such heterozygous mutations, we find that a cellular metabolite and ubiquitous environmental toxin, formaldehyde, stalls and destabilizes DNA replication forks, engendering structural chromosomal aberrations. Formaldehyde selectively depletes BRCA2 via proteasomal degradation, a mechanism of toxicity that affects very few additional cellular proteins. Heterozygous BRCA2 truncations, by lowering pre-existing BRCA2 expression, sensitize to BRCA2 haploinsufficiency induced by transient exposure to natural concentrations of formaldehyde. Acetaldehyde, an alcohol catabolite detoxified by ALDH2, precipitates similar effects. Ribonuclease H1 ameliorates replication fork instability and chromosomal aberrations provoked by aldehyde-induced BRCA2 haploinsufficiency, suggesting that BRCA2 …
Total citations
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